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Microencapsulation of diglycidyl 1,2-cyclohexanedicarboxylate by in situ polymerization: preparation and characterization

机译:1,2-环己烷二羧酸二缩水甘油酯的原位聚合微囊化:制备与表征

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Microcapsules containing a glycidyl ester-type epoxy resin were successfully synthesized by in situ polymerization, with poly(melamine-urea-formaldehyde) as the shell material and diglycidyl 1,2-cyclohexanedicarboxylate (DGCHD) as the core substance. Scanning electron microscopy was performed to investigate the surface morphology and shell wall thickness of the microcapsule. The fabrication, diameters and thermal decomposition behavior of the resultant microcapsules were studied by means of Fourier transform infrared spectroscopy, laser particle size analysis, and thermogravimetric analysis (TGA), respectively. Results indicated that the highest loading of DGCHD in the as-prepared microcapsules was about 89.1 wt.% and that the mean diameter of the capsules was in the range of 50–130 μm, which can be adjusted by changing the feeding mass ratio of the core/shell material and emulsifying rate, respectively. TGA results showed that the microencapsulated DGCHD degraded in two distinguishable stages.
机译:以聚(三聚氰胺-脲-甲醛)为壳材料,1,2-环己二甲酸二缩水甘油酯(DGCHD)为核心物质,通过原位聚合成功地合成了含有缩水甘油酯型环氧树脂的微胶囊。进行扫描电子显微镜以研究微胶囊的表面形态和壳壁厚度。分别通过傅里叶变换红外光谱,激光粒度分析和热重分析(TGA)研究了所得微胶囊的制备,直径和热分解行为。结果表明,所制备的微胶囊中DGCHD的最高负载量约为89.1 wt。%,并且胶囊的平均直径在50-130μm的范围内,可以通过更改微胶囊的进料质量比进行调整。核/壳材料和乳化率分别。 TGA结果表明,微囊化的DGCHD在两个明显的阶段降解。

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